. 6. A stable, normally distributed process with specification 45.00 +0.05 has μ-45.05 and σ -0.02, this implies that C, is: (A) 1.21 (B) 0.83 (C) 0.35 (D) 0.63 7. Calculate the sample standard deviation of the following set of data: (A) 10.75 (B) 11.78 (C) 138.8 (D) 34.00 52, 20, 24, 31, 35, 42 8. If the specification limits are wider than the natural tolerance limits, then: (A) The process is not capable (B) The process capability index is greater than 1.0 (C) The specification limits replace the control limits on the chart. (D) None of the above. When analyzing quality costs, a helpful method for singling the highest cost contributo 1S: (A) A series of interviews with the line foreman B) The application of the Pareto theory C) An audit of budget variance 9) The application of break-even and profit volume analysis. ich of the following activities is not normally considered as preventive cost? Quality training Quality planning aboratory acceptance testing. esign and development of quality measurement equipment Part II: Attempt the following problems: 11. (5 points) x and s charts with n = 9 are used to monitor a normally distributed quality characteristic. The control chart parameters are: x Chart Center Line = 610 UCL = 617.2 LCL = 602.8 s Chart Center Line = 5.816 UCL = 10.24 LCL = 1.39 What is the probability that a shift in the process mean to 618 will be detected on the first sample following the shift?

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Chapter1: Starting With Matlab
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6. A stable, normally distributed process with specification 45.00 +0.05 has μ-45.05
and σ -0.02, this implies that C, is:
(A) 1.21
(B) 0.83
(C) 0.35
(D) 0.63
7. Calculate the sample standard deviation of the following set of data:
(A) 10.75
(B) 11.78
(C) 138.8
(D) 34.00
52, 20, 24, 31, 35, 42
8. If the specification limits are wider than the natural tolerance limits, then:
(A) The process is not capable
(B) The process capability index is greater than 1.0
(C) The specification limits replace the control limits on the chart.
(D) None of the above.
When analyzing quality costs, a helpful method for singling the highest cost contributo
1S:
(A) A series of interviews with the line foreman
B) The application of the Pareto theory
C) An audit of budget variance
9) The application of break-even and profit volume analysis.
ich of the following activities is not normally considered as preventive cost?
Quality training
Quality planning
aboratory acceptance testing.
esign and development of quality measurement equipment
Transcribed Image Text:. 6. A stable, normally distributed process with specification 45.00 +0.05 has μ-45.05 and σ -0.02, this implies that C, is: (A) 1.21 (B) 0.83 (C) 0.35 (D) 0.63 7. Calculate the sample standard deviation of the following set of data: (A) 10.75 (B) 11.78 (C) 138.8 (D) 34.00 52, 20, 24, 31, 35, 42 8. If the specification limits are wider than the natural tolerance limits, then: (A) The process is not capable (B) The process capability index is greater than 1.0 (C) The specification limits replace the control limits on the chart. (D) None of the above. When analyzing quality costs, a helpful method for singling the highest cost contributo 1S: (A) A series of interviews with the line foreman B) The application of the Pareto theory C) An audit of budget variance 9) The application of break-even and profit volume analysis. ich of the following activities is not normally considered as preventive cost? Quality training Quality planning aboratory acceptance testing. esign and development of quality measurement equipment
Part II: Attempt the following problems:
11. (5 points)
x and s charts with n = 9 are used to monitor a normally distributed quality
characteristic. The control chart parameters are:
x Chart
Center Line = 610
UCL = 617.2
LCL = 602.8
s Chart
Center Line = 5.816
UCL = 10.24
LCL = 1.39
What is the probability that a shift in the process mean to 618 will be detected on the
first sample following the shift?
Transcribed Image Text:Part II: Attempt the following problems: 11. (5 points) x and s charts with n = 9 are used to monitor a normally distributed quality characteristic. The control chart parameters are: x Chart Center Line = 610 UCL = 617.2 LCL = 602.8 s Chart Center Line = 5.816 UCL = 10.24 LCL = 1.39 What is the probability that a shift in the process mean to 618 will be detected on the first sample following the shift?
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